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Effects of Vitamin D and Calcium Supplementation on Micro-architectural and Densitometric Changes of Rat Femur in a Microgravity Simulator Model

BACKGROUND: Revealing data on the role of vitamin D and calcium supplementation in bone health has led some to suggest that vitamin D and calcium treatment could also play a role in protecting bone against microgravity-induced mineral loss. OBJECTIVES: The aim of the present study was to investigate...

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Autores principales: Kouhnavard, Marjan, Nasli Esfahani, Ensieh, Montazeri, Mohammad, Hashemian, Seyed Jafar, Mehrazma, Mitra, Larijani, Bagher, Nezami Asl, Amir, Khoshvaghti, Amir, Falsafi, Ammar, Lalehfar, Komeil, Malekpour, Keyvan, Vosugh, Mehran
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Kowsar 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4102987/
https://www.ncbi.nlm.nih.gov/pubmed/25068054
http://dx.doi.org/10.5812/ircmj.18026
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author Kouhnavard, Marjan
Nasli Esfahani, Ensieh
Montazeri, Mohammad
Hashemian, Seyed Jafar
Mehrazma, Mitra
Larijani, Bagher
Nezami Asl, Amir
Khoshvaghti, Amir
Falsafi, Ammar
Lalehfar, Komeil
Malekpour, Keyvan
Vosugh, Mehran
author_facet Kouhnavard, Marjan
Nasli Esfahani, Ensieh
Montazeri, Mohammad
Hashemian, Seyed Jafar
Mehrazma, Mitra
Larijani, Bagher
Nezami Asl, Amir
Khoshvaghti, Amir
Falsafi, Ammar
Lalehfar, Komeil
Malekpour, Keyvan
Vosugh, Mehran
author_sort Kouhnavard, Marjan
collection PubMed
description BACKGROUND: Revealing data on the role of vitamin D and calcium supplementation in bone health has led some to suggest that vitamin D and calcium treatment could also play a role in protecting bone against microgravity-induced mineral loss. OBJECTIVES: The aim of the present study was to investigate the effects of vitamin D and calcium administration on microscopic and densitometric changes of rat femur in a Microgravity Simulator Model. MATERIALS AND METHODS: After designing a Microgravity Simulator Model, 14 rats were placed in the cages as follows: seven rats as osteoporosis group and seven rats received oral supplement of calcium/vitamin D as the treatment group. Animals were sacrificed after eight weeks and then both femurs were removed. Bone mineral density was measured for one femur from each animal, and morphologic studies were evaluated for the contralateral femur. RESULTS: Bone mineral density of the whole femur in the treatment group was significantly higher than the osteoporosis group (0.168 ± 0.005 vs. 0.153 ± 0.006, P = 0.003). Also, bone mineral content of the whole femur was significantly higher in treatment group (0.415 ± 0.016 vs. 0.372 ± 0.019, P = 0.003). However, resorption eroded surface percentage was higher in the osteoporosis group (18.86 ± 3.71% vs. 9.71 ± 1.61%, P = 0.002). CONCLUSIONS: According to the results of this study, vitamin D and calcium administration might have protective effects against microgravity-induced mineral loss in a Rat Microgravity Simulator Model.
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spelling pubmed-41029872014-07-25 Effects of Vitamin D and Calcium Supplementation on Micro-architectural and Densitometric Changes of Rat Femur in a Microgravity Simulator Model Kouhnavard, Marjan Nasli Esfahani, Ensieh Montazeri, Mohammad Hashemian, Seyed Jafar Mehrazma, Mitra Larijani, Bagher Nezami Asl, Amir Khoshvaghti, Amir Falsafi, Ammar Lalehfar, Komeil Malekpour, Keyvan Vosugh, Mehran Iran Red Crescent Med J Research Article BACKGROUND: Revealing data on the role of vitamin D and calcium supplementation in bone health has led some to suggest that vitamin D and calcium treatment could also play a role in protecting bone against microgravity-induced mineral loss. OBJECTIVES: The aim of the present study was to investigate the effects of vitamin D and calcium administration on microscopic and densitometric changes of rat femur in a Microgravity Simulator Model. MATERIALS AND METHODS: After designing a Microgravity Simulator Model, 14 rats were placed in the cages as follows: seven rats as osteoporosis group and seven rats received oral supplement of calcium/vitamin D as the treatment group. Animals were sacrificed after eight weeks and then both femurs were removed. Bone mineral density was measured for one femur from each animal, and morphologic studies were evaluated for the contralateral femur. RESULTS: Bone mineral density of the whole femur in the treatment group was significantly higher than the osteoporosis group (0.168 ± 0.005 vs. 0.153 ± 0.006, P = 0.003). Also, bone mineral content of the whole femur was significantly higher in treatment group (0.415 ± 0.016 vs. 0.372 ± 0.019, P = 0.003). However, resorption eroded surface percentage was higher in the osteoporosis group (18.86 ± 3.71% vs. 9.71 ± 1.61%, P = 0.002). CONCLUSIONS: According to the results of this study, vitamin D and calcium administration might have protective effects against microgravity-induced mineral loss in a Rat Microgravity Simulator Model. Kowsar 2014-06-05 2014-06 /pmc/articles/PMC4102987/ /pubmed/25068054 http://dx.doi.org/10.5812/ircmj.18026 Text en Copyright © 2014, Iranian Red Crescent Medical Journal; Published by Kowsar Corp. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Kouhnavard, Marjan
Nasli Esfahani, Ensieh
Montazeri, Mohammad
Hashemian, Seyed Jafar
Mehrazma, Mitra
Larijani, Bagher
Nezami Asl, Amir
Khoshvaghti, Amir
Falsafi, Ammar
Lalehfar, Komeil
Malekpour, Keyvan
Vosugh, Mehran
Effects of Vitamin D and Calcium Supplementation on Micro-architectural and Densitometric Changes of Rat Femur in a Microgravity Simulator Model
title Effects of Vitamin D and Calcium Supplementation on Micro-architectural and Densitometric Changes of Rat Femur in a Microgravity Simulator Model
title_full Effects of Vitamin D and Calcium Supplementation on Micro-architectural and Densitometric Changes of Rat Femur in a Microgravity Simulator Model
title_fullStr Effects of Vitamin D and Calcium Supplementation on Micro-architectural and Densitometric Changes of Rat Femur in a Microgravity Simulator Model
title_full_unstemmed Effects of Vitamin D and Calcium Supplementation on Micro-architectural and Densitometric Changes of Rat Femur in a Microgravity Simulator Model
title_short Effects of Vitamin D and Calcium Supplementation on Micro-architectural and Densitometric Changes of Rat Femur in a Microgravity Simulator Model
title_sort effects of vitamin d and calcium supplementation on micro-architectural and densitometric changes of rat femur in a microgravity simulator model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4102987/
https://www.ncbi.nlm.nih.gov/pubmed/25068054
http://dx.doi.org/10.5812/ircmj.18026
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